Poole Allison, Poore Tim, Bandhakavi Sricharan, McCann Richard O, Hanna David E, Glover Claiborne V C
Department of Biochemistry and Molecular Biology, Life Sciences Building, The University of Georgia, Athens, GA, USA.
Mol Cell Biochem. 2005 Jun;274(1-2):163-70. doi: 10.1007/s11010-005-2945-z.
The wealth of biochemical, molecular, genetic, genomic, and bioinformatic resources available in S. cerevisiae make it an excellent system to explore the global role of CK2 in a model organism. Traditional biochemical and genetic studies have revealed that CK2 is required for cell viability, cell cycle progression, cell polarity, ion homeostasis, and other functions, and have identified a number of potential physiological substrates of the enzyme. Data mining of available bioinformatic resources indicates that (1) there are likely to be hundreds of CK2 targets in this organism, (2) the majority of predicted CK2 substrates are involved in various aspects of global gene expression, (3) CK2 is present in several nuclear protein complexes predicted to have a role in chromatin structure and remodeling, transcription, or RNA metabolism, and (4) CK2 is localized predominantly in the nucleus. These bioinformatic results suggest that the observed phenotypic consequences of CK2 depletion may lie downstream of primary defects in chromatin organization and/or global gene expression. Further progress in defining the physiological role of CK2 will almost certainly require a better understanding of the mechanism of regulation of the enzyme. Beginning with the crystal structure of the human CK2 holoenzyme, we present a molecular model of filamentous CK2 that is consistent with earlier proposals that filamentous CK2 represents an inactive form of the enzyme. The potential role of filamentous CK2 in regulation in vivo is discussed.
酿酒酵母中丰富的生化、分子、遗传、基因组和生物信息学资源,使其成为在模式生物中探索CK2全球作用的优秀系统。传统的生化和遗传研究表明,CK2是细胞活力、细胞周期进程、细胞极性、离子稳态及其他功能所必需的,并已鉴定出该酶的许多潜在生理底物。对现有生物信息学资源的数据挖掘表明:(1)该生物体中可能存在数百个CK2靶点;(2)大多数预测的CK2底物参与全球基因表达的各个方面;(3)CK2存在于几种预测在染色质结构和重塑、转录或RNA代谢中起作用的核蛋白复合物中;(4)CK2主要定位于细胞核。这些生物信息学结果表明,观察到的CK2缺失的表型后果可能位于染色质组织和/或全球基因表达的主要缺陷的下游。几乎可以肯定,要进一步明确CK2的生理作用,需要更好地理解该酶的调节机制。从人CK2全酶的晶体结构开始,我们提出了丝状CK2的分子模型,该模型与早期关于丝状CK2代表该酶无活性形式的提议一致。本文还讨论了丝状CK2在体内调节中的潜在作用。